We present a theoretical study of photoluminescence from exciton states in InAs/GaAs asymmetric dot pairs, where interdot coupling is reached via magnetic field in the Faraday configuration. Electronic structure is obtained by finite element calculations, and Coulomb effects are included using a perturbative approach. According to our simulated spectra, bright excited states may become optically accessible at low temperatures in hybridization regimes where intermixing with the ground state is achieved. Our results show effective magnetic control on the energy, polarization and intensity of emitted light, and suggest these coupled nanostructures as relevant candidates for implementation of quantum optoelectronic devices. © 2014 Fino et al.; licensee Springer.
CITATION STYLE
Fino, N. R., Camacho, A. S., & Ramírez, H. Y. (2014). Coupling effects on photoluminescence of exciton states in asymmetric quantum dot molecules. Nanoscale Research Letters, 9(1), 1–5. https://doi.org/10.1186/1556-276X-9-297
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